August 2026

Journal

Design and simulation of a muon detector to characterize geological overburden

By:
Castro Tognini, Stefano ; Reddy Gadey, Harish; Deisenroth, Kadin; Bae, Junghyun ; Byram, Dana; Hargraves, Joshua; Cumberland, Riley M
Journal Name:
Journal of Applied Physics
Page Number:
74905
Volume:
139
Issue Number:
7
Publication Date:
August 20, 2026
View DOI Listing:
https://doi.org/10.1063/5.0288320

Abstract

This study presents the design, construction, and simulation of a mobile muon detector tailored for geological overburden characterization. The detector employs plastic scintillator paddles with silicon photomultipliers (SiPMs) and a QuarkNet data acquisition system, offering a portable solution suitable for remote field deployment. The simulator’s modular aluminum frame allows for adjustable geometry and directional sensitivity, while its battery system supports over a week of autonomous operation. Preliminary experimental tests confirmed that its muon flux measurements were consistent with theoretical expectations. A comprehensive simulation framework using Geant4 and CORSIKA was developed to model detector response and overburden effects. Analytical and Monte Carlo methods were used to assess quadrant resolution and infer muon directionality. This work lays the foundation for future overburden mapping and supports the development of reconstruction algorithms for geological applications.